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Counting, whole numbers, and arithmetic structureFactors, primes, and number structureG6 · ages 1014

Greatest common factor and least common multiple

Find GCF and LCM from prime factorisations and from lists, and choose the right one for a situation.

NUM.GCF_LCM

Mastery checkoff

“I can find the GCF and LCM of two numbers and know which one a problem needs.”

How to verify it

Find GCF and LCM of 24 and 36 from prime factors, then decide which is needed for a tiling problem.

Depth ladder

Depth is a column, not a second topic. The same topic is taught at these depths in different years; the path table below places each rung.

intro

Find GCF and LCM of small numbers by listing.

intermediate

Use prime factorisation with a factor Venn diagram.

advanced

Apply to fraction simplification, common denominators, and cyclic timing problems.

Where it lands on the path

CourseUnitDepthRoleCheckpoint
Grade 5Prime factorisationadvancedreview
Grade 5Prime factorisationintermediatereview
Grade 5Prime factorisationintrointroduce

Visual models

Factor Venn diagram

primarynone

Two overlapping sets of prime factors where the intersection is the GCF and the union the LCM.

GCF and LCM stop being two unrelated procedures.

engine: two-circle set layout with token placement

Factor tree

none

A branching decomposition of a composite number into primes.

Prime factorisation as structure, not a trick for GCF.

engine: tree layout with branch animation

Scene archetype: factor_tree

Misconceptions to diagnose

NUM.GCFLCM.SWAP

Uses LCM where GCF is needed (or vice versa).

Repair: Ask whether the answer should be smaller than the numbers (GCF) or larger (LCM).

NUM.GCFLCM.PRODUCT

Multiplies the two numbers to get the LCM every time.

Repair: Compare with 8 and 12 where the product overshoots.

How each system teaches this

One row per instructional system. Rows marked cluster carry authored treatment for this family of topics; rows marked template are derived from the system’s general pattern and are not topic-specific research. Confidence is recorded on every row.

Common Core State Standards for Mathematics

United Statesmastery
Grade 6ages 1014high confidencetemplate

Common Core places greatest common factor and least common multiple at a specific grade and expects it to be built on a named prerequisite from the year before rather than re-taught from scratch. The standard is usually phrased as understanding plus application, so the expectation is both a correct procedure and an explanation of why it works, developed through a documented progression of representations.

6.NS.B.4

Singapore mathematics (CPA / bar-model tradition)

Singaporemastery
P6ages 1115medium confidencetemplate

Singapore introduces greatest common factor and least common multiple concretely with objects the learner can move, then moves to a drawn model — usually a bar or a number bond — that keeps the structure visible, and only then to symbols. The drawn model is retained as the tool for word problems rather than discarded once the algorithm appears, which is why the same bar picture reappears years later for ratio and algebra.

Russian / Soviet school mathematics tradition

Russia (and diaspora programs)mastery
Class 6ages 1115medium confidencetemplate

The Russian tradition treats greatest common factor and least common multiple as structure to be analysed rather than a procedure to be executed. A typical lesson opens with a problem whose condition is schematised — a labelled segment drawing or a quantity table — so the relationships are visible before arithmetic begins, and closes with variations that break any pattern-matching the learner may have adopted. Non-routine and multi-step versions appear early rather than as extension.

Kumon worksheet mastery method

Japan (global franchise)self paced mastery
Level Fages 913medium confidencetemplate

Kumon reaches greatest common factor and least common multiple as a numbered worksheet level rather than a grade, and teaches it by graded repetition: the first pages of the level are barely harder than the last pages of the level before, so the method is inferred rather than explained. There is no manipulative and usually no context — the learner meets the bare computation, repeated until it is both accurate and fast, and repeats the level if the standard completion time is not met.

Japanese structured problem solving (MEXT tradition)

Japanproblem based
小6ages 1014medium confidencetemplate

A Japanese lesson on greatest common factor and least common multiple usually opens with one problem the class has not been shown how to do, worked independently for a stretch, after which several student approaches are put on the board side by side and ordered from the concrete to the general. The teaching happens in that comparison rather than before it, and the board keeps the whole argument visible so the class can see why the efficient method is efficient.

Classical / traditional American (Saxon-style spiral)

United Statesspiral
Saxon 7/6ages 1014medium confidencetemplate

The classical American approach introduces greatest common factor and least common multiple as a small increment inside a lesson that also reviews a dozen earlier ideas: the teacher shows a worked example, the learner imitates it, and the topic then reappears in mixed practice for months afterwards. Retention comes from distributed review rather than from a single deep unit, and fact fluency is drilled to automaticity on a timer before the topic is used elsewhere.

Montessori mathematics

Internationalsensorial
Upper Elementary (9-12)ages 913medium confidencetemplate

Montessori presents greatest common factor and least common multiple first as a material the child manipulates, chosen so that the structure of the mathematics is physically present in the object rather than explained about it. The child works with that material until the answer becomes predictable, then moves to a deliberately more abstract material representing the same idea, and only reaches written notation when the material has become redundant.

Art of Problem Solving / Beast Academy

United Statesproblem based
AoPS Prealgebraages 913medium confidencetemplate

AoPS approaches greatest common factor and least common multiple by handing the learner a problem that the standard method would solve easily but that they have not yet been given the standard method for, and letting the method be reconstructed from the attempt. The treatment goes materially deeper than a grade-level curriculum, favours a structural argument over a computation, and follows up with non-routine variations chosen to defeat pattern-matching.

factor tree

England National Curriculum and mastery approach

United Kingdom (England)mastery
Year 7ages 913medium confidencetemplate

The English mastery approach teaches greatest common factor and least common multiple to the whole class in small steps, using a carefully varied sequence of examples in which one feature changes at a time so the learner can see what the idea does and does not depend on. Concrete and pictorial representations — usually a bar model or a part-whole diagram — sit alongside the symbols rather than before them, and pupils who finish early get deeper problems on the same topic rather than the next one.

Illustrative Mathematics K-12 Math, first edition

United Statesproblem based
Grade 6ages 1014medium confidencetemplate

IM builds greatest common factor and least common multiple out of a task students can start with what they already have, then names the mathematics in a whole-class synthesis once several approaches are on the table. Representations are introduced in a planned order within the unit — commonly a diagram, then a table, then the symbolic form — and a short cool-down at the end of the lesson checks whether the idea landed before the sequence moves on.

Vocabulary

GCFLCMcommon factorcommon multiple